Kapelyukh Yury, Paine Mark J I, Maréchal Jean-Didier, Sutcliffe Michael J, Wolf C Roland, Roberts Gordon C K
Biomedical Research Centre, University of Dundee, Ninewells Hospital and Medical, School, Dundee, United Kingdom.
Drug Metab Dispos. 2008 Oct;36(10):2136-44. doi: 10.1124/dmd.108.021733. Epub 2008 Jul 21.
Cytochrome P450 3A4, a major drug-metabolizing enzyme in man, is well known to show non-Michaelis-Menten steady-state kinetics for a number of substrates, indicating that more than one substrate can bind to the enzyme simultaneously, but it has proved difficult to obtain reliable estimates of exactly how many substrate molecules can bind. We have used a simple method involving studies of the effect of large inhibitors on the Hill coefficient to provide improved estimates of substrate stoichiometry from simple steady-state kinetics. Using a panel of eight inhibitors, we show that at least four molecules of the widely used CYP3A4 substrate 7-benzyloxyquinoline can bind simultaneously to the enzyme. Computational docking studies show that this is consistent with the recently reported crystal structures of the enzyme. In the case of midazolam, which shows simple Michaelis-Menten kinetics, the inhibitor effects demonstrate that two molecules must bind simultaneously, consistent with earlier evidence, whereas for diltiazem, the experiments provide no evidence for the binding of more than one molecule. The consequences of this "inhibitor-induced cooperativity" for the prediction of pharmacokinetics and drug-drug interactions are discussed.
细胞色素P450 3A4是人体内一种主要的药物代谢酶,众所周知,它对许多底物表现出非米氏-门坦稳态动力学,这表明不止一种底物可以同时与该酶结合,但事实证明,要准确估计到底有多少底物分子能够结合是很困难的。我们采用了一种简单的方法,即研究大抑制剂对希尔系数的影响,以便从简单的稳态动力学中更准确地估计底物化学计量。使用一组八种抑制剂,我们发现广泛使用的CYP3A4底物7-苄氧基喹啉至少有四个分子可以同时与该酶结合。计算对接研究表明,这与该酶最近报道的晶体结构一致。对于表现出简单米氏-门坦动力学的咪达唑仑,抑制剂效应表明必须有两个分子同时结合,这与早期证据一致,而对于地尔硫䓬,实验没有提供超过一个分子结合的证据。本文讨论了这种“抑制剂诱导的协同性”对药代动力学预测和药物-药物相互作用的影响。